2019
DOI: 10.1101/509992
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Organism-wide single-cell transcriptomics of long-livedC. elegans daf-2-/-mutants reveals tissue-specific reprogramming of gene expression networks

Abstract: A critical requirement for a systems-level understanding of complex biological processes such as aging is the ability to directly characterize interactions between cells and tissues within a multicellular organism. C. elegans nematodes harboring mutations in the insulinlike receptor daf-2 exhibit dramatically-increased lifespans. To identify tissue-specific biochemical mechanisms regulating aging plasticity, we single-cell sequenced 3'-mRNA libraries generated from seven populations of whole day-one adult wild… Show more

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Cited by 2 publications
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“…The final dataset contained 47,423 cells quantifying 20,305 genes across the full time series. Our method yielded more reads per cell than previous scRNA-seq in C. elegans adults (2,175 unique molecular identifiers (UMIs) vs. 156 UMIs per cell, 644 genes vs. 52 genes per cell, comparing our data to that of Preston et al (Preston et al, 2019). However, we note that at the last time point (d15), we recovered fewer cells and fewer UMIs per cell (Figure S1A-C).…”
Section: Single-cell Rna Sequencing Of Aging C Elegansmentioning
confidence: 60%
“…The final dataset contained 47,423 cells quantifying 20,305 genes across the full time series. Our method yielded more reads per cell than previous scRNA-seq in C. elegans adults (2,175 unique molecular identifiers (UMIs) vs. 156 UMIs per cell, 644 genes vs. 52 genes per cell, comparing our data to that of Preston et al (Preston et al, 2019). However, we note that at the last time point (d15), we recovered fewer cells and fewer UMIs per cell (Figure S1A-C).…”
Section: Single-cell Rna Sequencing Of Aging C Elegansmentioning
confidence: 60%